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Accurate Measurement of Isotope Amount Ratios of Lead in Bronze with Multicollector Inductively Coupled Plasma Mass Spectrometry

机译:多收集器电感耦合等离子体质谱法精确测量青铜中铅的同位素含量比

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Isotope amount ratios of lead in a bronze sample have been successfully determined using multicollector inductively coupled plasma mass spectrometry (MC-ICP-MS). Matrix separation conditions were tested and optimized using ion exchange chromatography with anion-exchange resin, AG1-X8, and sequential elution of the 0.5 M HBr and 7 M to separate lead from very high contents of copper and tin in bronze matrix. Mercury was also removed efficiently in the optimized separation condition. The instrumental isotope fractionation of lead in the MC-ICP-MS measurement was corrected by the external standard sample bracketing method using an external standard, NIST SRM 981 lead common isotope ratio standard followed by correction of procedure blank to obtain reliable isotope ratios of lead. The isotope ratios, , , , and , of lead were determined as , , , and , respectively, and the determined isotope ratios showed good agreement with the reference values of an international comparison for the same sample within the stated uncertainties.
机译:使用多收集器电感耦合等离子体质谱法(MC-ICP-MS)已成功确定了青铜样品中铅的同位素含量比。使用阴离子交换树脂AG1-X8进行离子交换色谱法测试并优化了基质分离条件,并依次洗脱了0.5 M HBr和7 M以从青铜基质中的极高含量的铜和锡中分离铅。在优化的分离条件下,还可以有效去除汞。通过使用外标(NIST SRM 981铅常见同位素比标准)的外标样品括号法校正了MC-ICP-MS测量中铅的仪器同位素分馏,然后校正了空白方法以获得可靠的铅同位素比。铅的同位素比,,,和分别确定为,,和,并且在规定的不确定性范围内,确定的同位素比与同一样品的国际比较的参考值显示出很好的一致性。

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